首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Effects of growth hormone, insulin-like growth factor I, triiodothyronine, thyroxine, and cortisol on gene expression of carbohydrate metabolic enzymes in sea bream hepatocytes
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Effects of growth hormone, insulin-like growth factor I, triiodothyronine, thyroxine, and cortisol on gene expression of carbohydrate metabolic enzymes in sea bream hepatocytes

机译:生长激素,胰岛素样生长因子I,三碘甲状腺素,甲状腺素和皮质醇对鲷鱼肝细胞糖代谢酶基因表达的影响

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摘要

The present study investigated the regulatory effects of growth hormone (GH), human insulin-like growth factor I (hIGF-I), thyroxine (T_4), triiodothyronine (T_3) and cortisol, on mRNA expression of key enzymes involved in carbohydrate metabolism, including glucokinase (GK), glucose-6-phosphatase (G6Pase), glycogen synthase (GS), glycogen phosphorylase (GP) and glucose-6-phosphate dehydrogenase (G6PDH) in hepatocytes isolated from silver sea bream. Genes encoding GK, G6Pase, GS and GP were partially cloned and characterized from silver sea bream liver and real-time PCR assays were developed for the quantification of the mRNA expression profiles of these genes in order to evaluate the potential of these carbohydrate metabolic pathways. GK mRNA level was elevated by GH and hIGF-I, implying that GH-induced stimulation of GK expression may be mediated via IGF-I. GH was found to elevate GS and G6Pase expression, but reduce G6PDH mRNA expression. However, hIGF-I did not affect mRNA levels of GS, G6Pase and G6PDH, suggesting that GH-induced modulation of GS, G6Pase and G6PDH expression levels is direct, and occurs independently of the action of IGF-I. T_3 and T_4 directly upregulated transcript abundance of GK, G6Pase, GS and GP. Cortisol significantly increased transcript amounts of G6Pase and GS but markedly decreased transcript abundance of GK and G6PDH. These changes in transcript abundance indicate that (1) the potential of glycolysis is stimulated by GH and thyroid hormones, but attenuated by cortisol, (2) gluconeogenic and glycogenic potential are augmented by GH, thyroid hormones and cortisol, (3) glycogenolytic potential is upregulated by thyroid hormones but not affected by GH or cortisol, and (4) the potential of the pentose phosphate pathway is attenuated by GH and cortisol but unaffected by thyroid hormones.
机译:本研究调查了生长激素(GH),人胰岛素样生长因子I(hIGF-1),甲状腺素(T_4),三碘甲状腺素(T_3)和皮质醇对参与碳水化合物代谢的关键酶的mRNA表达的调节作用,从鲷鱼分离的肝细胞中包括葡萄糖激酶(GK),葡萄糖6磷酸酶(G6Pase),糖原合酶(GS),糖原磷酸化酶(GP)和葡萄糖6磷酸脱氢酶(G6PDH)。从银鲷肝脏中部分克隆了编码GK,G6Pase,GS和GP的基因,并对其进行了表征,并开发了实时PCR测定这些基因的mRNA表达谱的定量方法,以评估这些碳水化合物代谢途径的潜力。 GH和hIGF-1升高GK mRNA水平,这暗示GH诱导的GK表达刺激可能是通过IGF-1介导的。发现GH可提高GS和G6Pase的表达,但会降低G6PDH mRNA的表达。然而,hIGF-1不影响GS,G6Pase和G6PDH的mRNA水平,表明GH诱导的GS,G6Pase和G6PDH表达水平的调节是直接的,并且独立于IGF-1的作用而发生。 T_3和T_4直接上调了GK,G6Pase,GS和GP的转录本丰度。皮质醇显着增加了G6Pase和GS的转录量,但显着降低了GK和G6PDH的转录丰度。转录本丰度的这些变化表明(1)GH和甲状腺激素刺激了糖酵解的潜力,但被皮质醇减弱了;(2)GH,甲状腺激素和皮质醇增加了糖异生和糖原的潜力;(3)糖原分解的潜力是被甲状腺激素上调,但不受GH或皮质醇影响;(4)GH和皮质醇减弱了戊糖磷酸途径的潜力,但不受甲状腺激素的影响。

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